Evaluating Harmonic Voltage in Electric Distribution Systems due to Six-Pulse Static Power Converter

The circulation of harmonic currents in power systems, caused by particular nonlinear loads, leads to harmonic voltages which depend on the circuit and on the load it drives. Harmonic currents in the system also contribute with a portion of the system technical losses and produce a series of undesir...

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Veröffentlicht in:Revista IEEE América Latina 2014-09, Vol.12 (6), p.1036-1042
Hauptverfasser: Francisco do Nascimento, Claudionor, Antonio Belati, Edmarcio, Batista Dietrich, Alvaro, de Faria, Haroldo, Goedtel, Alessandro
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container_title Revista IEEE América Latina
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creator Francisco do Nascimento, Claudionor
Antonio Belati, Edmarcio
Batista Dietrich, Alvaro
de Faria, Haroldo
Goedtel, Alessandro
description The circulation of harmonic currents in power systems, caused by particular nonlinear loads, leads to harmonic voltages which depend on the circuit and on the load it drives. Harmonic currents in the system also contribute with a portion of the system technical losses and produce a series of undesirable effects. This paper presents an alternative approach based on an efficient harmonic load flow algorithm in order to evaluate harmonic voltages along distribution systems due to nonlinear loads, more specifically a six-pulse static power converter. The proposed methodology uses frequency-domain formulations which allow dealing directly with voltage and current phasors. Tests were carried out on 04 and 34 bus distribution systems in order to evaluate the proposed technique performance.
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source IEEE Electronic Library (IEL)
subjects Circulation
Computational modeling
Dealing
electric distribution systems
Electric potential
Harmonic analysis
harmonic load flow
harmonic voltage
Harmonics
Load flow
Nonlinearity
Phasors
Power converters
Power system harmonics
Robustness
six-pulse static power converter
Static power converters
Voltage
title Evaluating Harmonic Voltage in Electric Distribution Systems due to Six-Pulse Static Power Converter
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